Review of Scientific Instruments · 1994 · 49 citations · 4 references
Superconducting MaterialEngineeringDetector PhysicsCalibrationSuperconductivityThermodynamicsInstrumentationElectrical EngineeringRadio Frequency CavitiesPhysicsSingle-cell CavitiesL-band CavitiesThermal PhysicsRadiometryHeat TransferMicrowave EngineeringHigh SpeedInstrument ScienceCryogenicsApplied PhysicsTemperature MeasurementTemperature ResolutionThermal Sensor
Presented in this paper are the description and the test results of a new stationary thermometry system used to map the temperature of the outer surface of 1.5 GHz superconducting single-cell cavities during operation at 1.6 K. The system comprises 764 removable carbon thermometers whose signals are multiplexed and scanned by a Macintosh computer. A complete temperature map can be obtained in as little as 0.1 s at a temperature resolution of about 0.2 mK. Alternatively, it has been demonstrated that if the acquisition time is increased to several seconds, then a temperature resolution on the order of 30 μK is possible. To our knowledge, these are the fastest acquisition times so far achieved with L-band cavities at these resolutions.
4
Electron field emission from broad-area electrodes
R. Noer · Applied Physics A · 1982 · 105 citations
Electrical Engineering, Engineering, Electron Spectroscopy +3
FIELD EMISSION STUDIES IN SUPERCONDUCTING CAVITIES
H. Padamsee, Charles Reece, A. Noert et al. · IEEE Particle Accelerator Conference · 1987 · 12 citations
Superconducting Material, Engineering, Superconductivity +18